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Deubiquitinating enzyme CYLD negatively regulates RANK signaling and osteoclastogenesis in mice
Wei Jin, Mikyoung Chang, Emmanuel M. Paul, Geetha Babu, Andrew J. Lee, William Reiley, Ato Wright, Minying Zhang, Jun You, Shao-Cong Sun
Wei Jin, Mikyoung Chang, Emmanuel M. Paul, Geetha Babu, Andrew J. Lee, William Reiley, Ato Wright, Minying Zhang, Jun You, Shao-Cong Sun
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Research Article Bone biology

Deubiquitinating enzyme CYLD negatively regulates RANK signaling and osteoclastogenesis in mice

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Abstract

Osteoclastogenesis is a tightly regulated biological process, and deregulation can lead to severe bone disorders such as osteoporosis. The regulation of osteoclastic signaling is incompletely understood, but ubiquitination of TNF receptor–associated factor 6 (TRAF6) has recently been shown to be important in mediating this process. We therefore investigated the role of the recently identified deubiquitinating enzyme CYLD in osteoclastogenesis and found that mice with a genetic deficiency of CYLD had aberrant osteoclast differentiation and developed severe osteoporosis. Cultured osteoclast precursors derived from CYLD-deficient mice were hyperresponsive to RANKL-induced differentiation and produced more and larger osteoclasts than did controls upon stimulation. We assessed the expression pattern of CYLD and found that it was drastically upregulated during RANKL-induced differentiation of preosteoclasts. Furthermore, CYLD negatively regulated RANK signaling by inhibiting TRAF6 ubiquitination and activation of downstream signaling events. Interestingly, we found that CYLD interacted physically with the signaling adaptor p62 and thereby was recruited to TRAF6. These findings establish CYLD as a crucial negative regulator of osteoclastogenesis and suggest its involvement in the p62/TRAF6 signaling axis.

Authors

Wei Jin, Mikyoung Chang, Emmanuel M. Paul, Geetha Babu, Andrew J. Lee, William Reiley, Ato Wright, Minying Zhang, Jun You, Shao-Cong Sun

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Figure 1

Bone loss in Cyld–/– mice.

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Bone loss in Cyld–/– mice.
   
Age-matched Cyld+/+ and Cyld–/– male mice...
Age-matched Cyld+/+ and Cyld–/– male mice (14 weeks of age, 7 per group) were subjected to microCT analysis. (A) Representative images of 3D microCT reconstruction of trabecular bone 263 μm above the distal femoral growth plate showing the severe bone loss in Cyld–/– mice. (B) Parameters of trabecular bone mass, including bone volume fraction (BV/TV), trabecular number (Tb. N), trabecular thickness (Tb. Th), trabecular separation (Tb. Sp), connectivity density (Conn. D), structure model index (SMI), and degree of anisotropy (DA). (C) Parameters of cortical bone mass, including bone volume fraction, total volume (TV), bone volume (BV), and cortical bone thickness (Tb. Th). *P < 0.05, **P < 0.02, ***P < 0.002. Error bars represent SEM.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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